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Bacteriophage phi11 lysin: Physicochemical characterization and comparison with phage phi80 alpha lysin

机译:噬菌体phi11溶菌素:理化特性和与噬菌体phi80α溶菌素的比较

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Phage lytic enzymes are promising antimicrobial agents. Lysins of phages phi11 (LysPhi11) and phi80 alpha (LysPhi80 alpha) can lyse (destroy) cells of antibiotic-resistant strains of Staphylococcus aureus. Stability of enzymes is one of the parameters making their practical use possible. The objectives of the study were to investigate the stability of lysins of phages phi11 and phi80 alpha in storage and functioning conditions, to identify optimum storage conditions and causes of inactivation. Stability of the recombinant LysPhi11 and LysPhi80 alpha was studied using turbidimetry. CD-spectroscopy, dynamic light scattering, and electrophoresis were used to identify causes of inactivation. At 37 degrees C, pH 7.5 and concentration of NaCl not higher than 150 mM, LysPhi11 molecules contain a high percentage of random coils (43%). However, in spite of this the enzyme has high activity (0.4-0.8 OD600nm s(-1) mg(-1)). In storage conditions (4 degrees C and 22 degrees C, pH 6.0-9.0, 10-500 mM NaCl) LysPhi11 is inactivated by a monomolecular mechanism. The optimum storage conditions for LysPhi11 (4 degrees C, pH 6.0-7.5, 10 mM NaCl) were selected under which the time of the enzyme half-inactivation is 120-160 days. LysPhi80 alpha stability is insufficient: at 37 degrees C the enzyme loses half of its activity almost immediately; at 4 degrees C and 22 degrees C the time of half-inactivation of LysPhi80 alpha varies in the range from several hours to 3 days. Despite the common properties in the manifestation of antistaphylococcal activity the kinetic behavior of the enzymes is different. LysPhi11 is a more promising candidate to be used as an antimicrobial agent. (c) 2015 Elsevier Inc. All rights reserved.
机译:噬菌体裂解酶是有前途的抗菌剂。噬菌体phi11(LysPhi11)和phi80 alpha(LysPhi80 alpha)的溶素可以溶解(破坏)金黄色葡萄球菌耐药菌株的细胞。酶的稳定性是使其实际应用成为可能的参数之一。这项研究的目的是调查噬菌体phi11和phi80 alpha的溶菌素在储存和功能条件下的稳定性,以确定最佳的储存条件和失活的原因。使用比浊法研究了重组LysPhi11和LysPhi80α的稳定性。 CD光谱,动态光散射和电泳被用来确定失活的原因。在37摄氏度,pH 7.5和NaCl浓度不高于150 mM的情况下,LysPhi11分子包含高百分比的无规卷曲物(43%)。但是,尽管如此,该酶仍具有很高的活性(0.4-0.8 OD600nm s(-1)mg(-1))。在储存条件下(4摄氏度和22摄氏度,pH 6.0-9.0,10-500 mM NaCl),LysPhi11通过单分子机理失活。选择LysPhi11的最佳储存条件(4摄氏度,pH 6.0-7.5,10 mM NaCl),在该条件下,酶的半灭活时间为120-160天。 LysPhi80 alpha稳定性不足:在37摄氏度时,酶几乎立即失去一半活性;在4摄氏度和22摄氏度下,LysPhi80 alpha的半灭活时间在数小时到3天之间不等。尽管抗葡萄球菌活性的表现具有共同的特性,但酶的动力学行为却不同。 LysPhi11是用作抗菌剂的更有希望的候选者。 (c)2015 Elsevier Inc.保留所有权利。

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